Publication | Open Access
Mechanism of Conductivity Relaxation in Liquid and Polymeric Electrolytes: Direct Link between Conductivity and Diffusivity
128
Citations
50
References
2016
Year
Relaxation ProcessEngineeringChemistryIon ProcessConducting PolymerPolymeric ElectrolytesTransport PhenomenaAnalytical ChemistryBiophysicsPolymer ChemistryMaterials ScienceElectroactive MaterialSolid-state IonicIon ExchangeConductivity Relaxation ProcessPhysical ChemistryConductivity RelaxationElectrochemistryIon ConcentrationPolymer ScienceApplied PhysicsIonic ConductorDirect LinkIon Structure
Combining broadband impedance spectroscopy, differential scanning calorimetry, and nuclear magnetic resonance we analyzed charge and mass transport in two polymerized ionic liquids and one of their monomeric precursors. In order to establish a general procedure for extracting single-particle diffusivity from their conductivity spectra, we critically assessed several approaches previously employed to describe the onset of diffusive charge dynamics and of the electrode polarization in ion conducting materials. Based on the analysis of the permittivity spectra, we demonstrate that the conductivity relaxation process provides information on ion diffusion and the magnitude of cross-correlation effects between ionic motions. A new approach is introduced which is able to estimate ionic diffusivities from the characteristic times of conductivity relaxation and ion concentration without any adjustable parameters. This opens the venue for a deeper understanding of charge transport in concentrated and diluted electrolyte solutions.
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